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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Superplastic forming process applied to aero-industrial strakelet: wrinkling, thickness, and microstructure analysis
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Superplastic forming process applied to aero-industrial strakelet: wrinkling, thickness, and microstructure analysis

机译:超塑性成形工艺应用于航空工业链片:起皱,厚度和微观结构分析

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摘要

Superplastic forming (SPF) of an aluminum sheet trough with a large depth to width ratio is challenging because of the difficulties in obtaining a satisfactory, uniformthickness distribution. To address this problem, two different SPF techniques, namely, two-stage gas forming (TSGF) and hot-bend assisted gas forming (HBAGF), were used to fabricate airplane strakelets. Undesirable wrinkling occurred in both cases, but the sites and causes of wrinkle formation were different. Thickness measurements around the edge of the circumference were relatively uniform, with a minimum thickness of similar to 1.32 mm (similar to 34.0 % thinning percentage) for the HBAGF sample. This thickness significantly exceeded that of a sample processed by a previously developed TSGF method (similar to 0.8 mm, similar to 60 % thinning percentage). Three-dimensional finite element analysis was implemented to accurately predict the shape and occurrence of wrinkling. Furthermore, experimental forming trials with the HBAGF die led to significant improvement of the thickness profile of superplastically formed parts.
机译:具有大的纵横比的铝板槽的超塑性成形(SPF)具有挑战性,因为难以获得令人满意的均匀厚度分布。为了解决这个问题,使用了两种不同的SPF技术,即两阶段气体成形(TSGF)和热弯辅助气体成形(HBAGF),来制造飞机小支架。在两种情况下都发生了不希望的起皱,但是起皱的部位和原因不同。圆周边缘周围的厚度测量相对均匀,HBAGF样品的最小厚度约为1.32毫米(约占34.0%的减薄百分比)。该厚度大大超过了通过先前开发的TSGF方法处理的样品的厚度(类似于0.8毫米,相似于60%的减薄百分比)。进行了三维有限元分析,以准确预测起皱的形状和发生。此外,使用HBAGF模具进行的实验性成型试验极大地改善了超塑性成型零件的厚度轮廓。

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